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[资料] Tracking Filter Engineering: The Gauss-Newton and Polynomial Filters

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发表于 2013-5-14 09:11:51 | 显示全部楼层 |阅读模式

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Tracking Filter Engineering: The Gauss-Newton and Polynomial Filters by Norman Morrison
ISBN: 1849195544

2012

For almost 50 years the Kalman filter has been the accepted approach to tracking filter engineering. At the start of the Satellite Age in 1958, Gauss-Newton tracking filters were tried but had to be ruled out for real-time use because of the speed limitations of existing computers. In their place two new algorithms were devised, first the Swerling filter and then the Kalman filter, both of which could be run in real time on the machines of that era. It was nevertheless observed that Gauss-Newton possessed some superior properties, particularly with regard to stability.       


Computer speed has now vastly increased and so Gauss-Newton need no longer be ruled out. The almost one hour that it took to execute Gauss-Newton in 1958 is now down to a few tens of milliseconds on readily available machines, and could soon be down to microseconds if computer technology continues to progress as it has done in recent years.

It is on this basis that Morrison presents his approach. The book provides a complete theoretical background, and then discusses in detail the Gauss-Newton filters. Of particular interest is a new approach to the tracking of maneuvering targets that is made possible by these filters. The book also covers the expanding and fading memory polynomial filters based on the Legendre and Laguerre orthogonal polynomials, and how these can be used in conjunction with Gauss-Newton.

Fourteen carefully constructed computer programs cover the theoretical background, and also demonstrate the power of the Gauss-Newton and polynomial filters. Two of these programs include Kalman, Swerling and Gauss-Newton filters, all three processing identical data. These demonstrate Kalman and Swerling instability to which Gauss-Newton is immune, and also the fact that if an attempt is made to forestall Kalman and Swerling instability by the use of a Q matrix, then they are no longer Cramer-Rao consistent and become noticeably less accurate than the always Cramer-Rao consistent Gauss-Newton filters.
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发表于 2013-5-14 11:58:07 | 显示全部楼层
louzhuhaoyangde
发表于 2013-5-14 22:39:33 | 显示全部楼层
确实不错的资料!!
发表于 2013-6-5 11:00:32 | 显示全部楼层
good in theory of filter
发表于 2013-6-8 22:46:05 | 显示全部楼层
听起来像重温历史,而且看起来好像还挺不错的
发表于 2014-5-13 09:28:43 | 显示全部楼层
高斯滤波器吗?看看
发表于 2014-6-29 19:31:20 | 显示全部楼层
回复 1# hi_china59


   好书
发表于 2014-9-10 23:05:09 | 显示全部楼层
感谢楼主分享
发表于 2016-6-30 19:20:25 | 显示全部楼层
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